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Laboratory investigation of cracking resistance performance of the cold-mixed epoxy resin

机译:冷混合环氧树脂开裂性能实验室研究

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摘要

Cold-mix epoxy resin (CER) is an excellent binder material but with weak crack resistance and brittle failure risk. Therefore, it is of significance to find a feasible parameter to constrain the failure potential. To this end, the dynamic mechanical test, tensile test, volume shrinkage test, fracture test, and scanning electron microscopy (SEM) were used to analyze and evaluate mechanical properties, curing shrinkage, and fracture toughness of the CER. Subsequently, the bivariate correlation analysis was used to feature the relationship among different indicators. The results indicated that the amount of curing agent has a significant influence on the tensile strength, elongation at break, volume shrinkage, fracture toughness, and plastic radius of CER. Meanwhile, there is a close correlation between tensile strength, elongation at break, and fracture toughness. Fracture toughness can be used as an evaluation index to represent the crack resistance of CER, and tensile test can be used as a confirmatory parameter. However, the volume shrinkage of CER cannot be ignored. Small voids distributed on the fracture surface of the CER can increase the toughness and then improve the crack resistance of the CER through SEM analysis.
机译:冷混环氧树脂(CER)是一种优良的粘结材料,但抗裂性差,存在脆性破坏风险。因此,寻找一个可行的参数来约束失效可能性具有重要意义。为此,采用动态力学试验、拉伸试验、体积收缩试验、断裂试验和扫描电子显微镜(SEM)分析和评估CER的力学性能、固化收缩和断裂韧性。随后,采用双变量相关分析来描述不同指标之间的关系。结果表明,固化剂用量对CER的拉伸强度、断裂伸长率、体积收缩率、断裂韧性和塑性半径有显著影响。同时,拉伸强度、断裂伸长率和断裂韧性之间存在密切的相关性。断裂韧性可作为表征CER抗裂性的评价指标,拉伸试验可作为验证性参数。然而,CER的体积收缩是不可忽视的。SEM分析表明,分布在CER断口上的细小孔洞可以提高CER的韧性,进而提高CER的抗裂性。

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